Abstract:
A personal health management device is described. The device is part of a system comprising at least one console, one or more devices in wireless communication with the console wherein the console acts as an intelligent gateway through which the one or more devices may communicate to external data and voice networks, and an alert system wherein an alert is triggered by one or more of a user's action and pre-set alarm criteria and wherein the triggering of an alert causes the console to take an action. The device may be a wearable device or it may be implemented in software and reside on third-party hardware.
Abstract:
A personal monitoring and communication system includes a monitoring and communication control device, at least one personal monitoring communication device coupled with a person and a personal monitoring communication device finder. The personal monitoring communication device includes a GPS receiver, cellular telephone circuits, and short-range wireless radio circuits for communicating with caregivers. The personal monitoring communication device finder receives an emergency beacon generated by one personal monitoring communication device and determines a location of the personal monitoring communication device. A dead reckoning circuit determines the position of the person from a reference location. A motion detection circuit determines that the person is moving, not moving, or has fallen. A battery power management circuit minimizes power consumption to increase battery life of a battery powering the personal monitoring communication device. A tamper detection circuit determines whether the personal monitoring communication device is coupled to the person.
Abstract:
A computing system wherein communication between a host computer and peripheral units, e.g. computer mouse and keyboard, is performed using RF signals. The host computer and the peripheral units each contain a transceiver for managing and transmitting the RF communication messages. An acknowledgement is sent by the receiving transceiver to the sending transceiver to signify that the message was successfully received. If no acknowledgement is received by the sending transceiver, a subsequent RF communication message is sent until an acknowledgement is received. A sleep mode is invoked between messages to conserve battery power in the peripheral units, and the peripheral units send a report message to the host when awaking periodically, or by a user demand, from the sleep mode signifying that the peripheral unit is active and ready to send or receive messages.
Abstract:
Distributed applications in a portable thread environment are disclosed. In one embodiment, a method comprises receiving a message from a first PTE at a second PTE, wherein the message contains a destination address; determining if the message is intended for the second PTE using the PTE destination address; routing the message to a third PTE if the message is not intended for the second PTE; and executing threads associated with the message in the second PTE if the message is intended for the second PTE.
Abstract:
A communication system that allows communication devices to synchronize the transfer of data to allow the devices to wirelessly and efficiently communicate in a star or mesh network. The communication system operates in the presence of other communication systems noise sources using a spread spectrum frequency hopping transmission scheme to efficiently generate adaptive frequency hopping patterns that are unique to the members of the wireless network based on a network identification code. The communication system employs a predictive retrieval of data for transmission from one device storing the data to a requesting device. A communication device transfers communication from a first network to a second network when the device has been moved beyond the range of the first network, where the second network is in communication with at least one other member device of the first network.
Abstract:
A wireless communication between a mouse and a keyboard connected to a computer with a cable provides a means for connecting mouse signals to a computer. Transceivers located in both the mouse and the keyboard provide RF communications that are converted by the keyboard transceiver to electrical signals to be coupled to the computer through USB or PS/2 ports. An integration of a key scan function with a keyboard transceiver reduces the number of semiconductor chips required in the keyboard.
Abstract:
A computing system wherein communication between a host computer and peripheral units, e.g. computer mouse and keyboard, is performed using RF signals. The host computer and the peripheral units each contain a transceiver for managing and transmitting the RF communication messages. An acknowledgement is sent by the receiving transceiver to the sending transceiver to signify that the message was successfully received. If no acknowledgement is received by the sending transceiver, a subsequent RF communication message is sent until an acknowledgement is received. A sleep mode is invoked between messages to conserve battery power in the peripheral units, and the peripheral units send a report message to the host when awaking periodically, or by a user demand, from the sleep mode signifying that the peripheral unit is active and ready to send or receive messages.
Abstract:
A computing system wherein communication between a host computer and peripheral units, e.g. computer mouse and keyboard, is performed using RF signals. The host computer and the peripheral units each contain a transceiver for managing and transmitting the RF communication messages. An acknowledgement is sent by the receiving transceiver to the sending transceiver to signify that the message was successfully received. If no acknowledgement is received by the sending transceiver, a subsequent RF communication message is sent until an acknowledgement is received. A sleep mode is invoked between messages to conserve battery power in the peripheral units, and the peripheral units send a report message to the host when awaking periodically, or by a user demand, from the sleep mode signifying that the peripheral unit is active and ready to send or receive messages.
Abstract:
Computer and peripheral interfaces that have both wired communication and wireless communication interfaces are provided. In one implementation, one of the two communication interfaces may be activated while the other interface is inactive and is used as a backup. When the operating interface fails, control logic detects the failure and activates the backup interface to maintain the communication. In other implementations, the user can select which of the two types of communication interface is desired.
Abstract:
A personal monitoring and communication system includes a monitoring and communication control device, at least one personal monitoring communication device coupled with a person and a personal monitoring communication device finder. The personal monitoring communication device includes a GPS receiver, cellular telephone circuits, and short-range wireless radio circuits for communicating with caregivers. The personal monitoring communication device finder receives an emergency beacon generated by one personal monitoring communication device and determines a location of the personal monitoring communication device. A dead reckoning circuit determines the position of the person from a reference location. A motion detection circuit determines that the person is moving, not moving, or has fallen. A battery power management circuit minimizes power consumption to increase battery life of a battery powering the personal monitoring communication device. A tamper detection circuit determines whether the personal monitoring communication device is coupled to the person.